• Laser & Optoelectronics Progress
  • Vol. 60, Issue 8, 0811019 (2023)
Weize Li1、†, Qionghua Wang†、*, Tongyu Wang, Linbo Zhang, Hanle Zhang, and Yan Xing
Author Affiliations
  • School of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing 100191, China
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    DOI: 10.3788/LOP230429 Cite this Article Set citation alerts
    Weize Li, Qionghua Wang, Tongyu Wang, Linbo Zhang, Hanle Zhang, Yan Xing. Source Rendering Platform for Splicing Realized Integral Imaging Light Field 3D Display[J]. Laser & Optoelectronics Progress, 2023, 60(8): 0811019 Copy Citation Text show less
    Structure of the spliced integral imaging light field 3D display
    Fig. 1. Structure of the spliced integral imaging light field 3D display
    Flowchart of the 3D source generation method
    Fig. 2. Flowchart of the 3D source generation method
    Schematic of the splitting initial elemental image array
    Fig. 3. Schematic of the splitting initial elemental image array
    3D source rendering platform. (a) Rendering platform interface; (b) model rendering window
    Fig. 4. 3D source rendering platform. (a) Rendering platform interface; (b) model rendering window
    "Mountain" 3D model
    Fig. 5. "Mountain" 3D model
    Corrected display effect of integral imaging light field 3D display after correction. (a) 0°; (b) -90°; (c) 90°; (d) 180°
    Fig. 6. Corrected display effect of integral imaging light field 3D display after correction. (a) 0°; (b) -90°; (c) 90°; (d) 180°
    Comparison of 3D image before and after correction. (a) Before correction; (b) after correction
    Fig. 7. Comparison of 3D image before and after correction. (a) Before correction; (b) after correction
    Resolution1920×10803840×21607680×864015360×8640
    Rendering time /s8.869.3611.0914.20
    Table 1. Average rendering time at different resolutions
    Weize Li, Qionghua Wang, Tongyu Wang, Linbo Zhang, Hanle Zhang, Yan Xing. Source Rendering Platform for Splicing Realized Integral Imaging Light Field 3D Display[J]. Laser & Optoelectronics Progress, 2023, 60(8): 0811019
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